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Assessment of climatic variation on bio cement mortar-based infrastructure

机译:基于生物水泥砂浆基础设施的气候变化评估

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Over the last few decades,effects of climate change have been widely studied by researchers.This change alters environmental conditions,which in turns influence the activities of bacteria.Therefore,this study assesses the effect of climatic variation on bio cement mortar-based infrastructure.This is achieved by evaluating the effects of temperature and relative humidity on the compressive strength of bio cement mortar.The bacteria used in the bio cement mortar are bacillus subtilis.30 ml of bacillus subtiliss pore solution was added to the mix to create bio cement mortar.Test sample cubes of bio cement mortar were prepared and cured at different temperatures and different relative humidity.In addition,control sample cubes of cement mortar without bacteria were water cured.The 7-and 28-days compressive strengths were obtained.The results showed that the compressive strength of the bio cement mortar increased as both temperature and relative humidity increased.The 7-and 28-days compressive strengths increased by as much as 83.3% and 110% respectively when temperature increased,and by as much as 106.1% and 73.5% respectively when relative humidity was increased.
机译:在过去的几十年里,研究人员已经广泛研究了气候变化的影响。这一变化改变了环境条件,这反过来影响了细菌的活动。因此,这项研究评估了气候变化对基于生物水泥基础设施的影响。这是通过评估温度和相对湿度对生物水泥砂浆的抗压强度的影响来实现的。生物水泥砂浆中使用的细菌是枯草芽孢杆菌.30ml枯草芽孢杆菌孔溶液加入混合物中以产生生物水泥砂浆Bio水泥砂浆的最终样本立方体制备并在不同的温度下固化,不同的相对湿度。此外,没有细菌的水泥砂浆的对照样品立方体是水固化。获得7-8天的抗压强度。结果显示Bio水泥砂浆的抗压强度随着温度和相对湿度而增加而增加。7-和28天的压缩当温度升高时,ve强度分别增加了83.3%和110%,当相对湿度增加时分别增加了多达106.1%和73.5%。

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